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    • 1. 发明公开
    • 하이브리드 생체 신호 측정 장치
    • 用于测量混合型生物信号的装置
    • KR1020150065123A
    • 2015-06-12
    • KR1020140034757
    • 2014-03-25
    • 주식회사 솔미테크가천대학교 산학협력단
    • 신승철한창호김이슬이명규조진수황보택근
    • A61B5/04A61B5/0402A61B5/0245
    • 본발명은하이브리드생체신호측정장치에관한것으로서, 상기하이브리드생체신호측정장치의한 특징은끈 형태로이루어져있고, 가운데부분에형성된장착홈, 상기장착홈을사이에두고서로마주보게위치하며사용자의피부와접촉되는한 쌍의도전성전극, 그리고상기장착홈하부에위치하고상기한 쌍의도전성전극과각각연결되어있는한 쌍의제1 연결부를구비한본체, 그리고상기장착홈에안착되고, 상기한 쌍의제1 연결부와각각대응되게위치하여상기한 쌍의제1 연결부와각각착탈가능하게결합되는한 쌍의제2 연결부를구비하는생체신호측정유닛을포함한다. 이로인해, 하이브리드생체신호측정장치의생체신호측정유닛은탈부착가능한구조를갖고있고, 하이브리드생체신호측정장치는사용자의필요에따라벨트형태로사용하거나패치형태로사용되므로, 사용자의편리성과만족도가증가한다.
    • 本发明涉及一种用于测量混合型生物信号的装置。 用于测量混合型生物信号的装置包括:主体,其包括具有刺状形状并形成在中心部分的安装槽,一对由安装槽分隔开的面对面的导电电极, 并且触摸使用者的皮肤,以及分别位于安装槽的下部并分别与第一连接部连接的一对第一连接部,以及用于测量生物信号的单元,其具有一对 第二连接部件,其安装到安装槽上,并且分别对应于可从连接部件拆卸的连接部件。 因此,用于测量混合型生物信号测量装置的生物信号的单元具有可拆卸的结构。 因为用于测量混合型生物信号的装置可以根据用户的需要使用贝状或贴片形状,所以提高了用户的便利性和满意度。
    • 3. 发明公开
    • 3축 가속도 센서를 이용한 실시간 운동측정장치 및 방법
    • 基于加速度传感器的实时跑步/跑步练习的分类和计数算法
    • KR1020150071729A
    • 2015-06-29
    • KR1020130152672
    • 2013-12-09
    • 가천대학교 산학협력단
    • 조진수정정일김이슬이수덕박종민
    • A61B5/103A61B5/11
    • 본발명은 3축가속도센서기반실시간걷기/뛰기운동분류및 측정시스템에관한것으로, 더욱상세하게는일상생활내 유산소운동의정확한운동량측정을위해가속도센서(1축)를기반으로한 걷기/뛰기의구성동작(도움닫기, 내딛기및 착지)에대한가속도센서신호의분석을통해이를도움닫기와내딛기두 동작으로단순화한다음단순화된걷기/뛰기에대한신호검출의용이성을위해가속도센서신호의평활화를수행하며, 평활화된 결과로부터걷기/뛰기에대한운동분류의기준과함께횟수측정의기준을정의하고, 정의한기준을바탕으로걷기/뛰기에대한사용자의테스트정보와실시간운동정보를비교분석하여, 걷기/뛰기운동을분류함과함께각 운동에대한운동횟수를측정하여추후걷기/뛰기운동의횟수에따른칼로리소비량과연계함으로써보다정확한운동량을산출할수 있도록한 3축가속도센서기반실시간걷기/뛰기운동분류및 측정시스템에관한것이다.
    • 本发明涉及一种基于三轴加速度传感器实时分类和测量步行/跑步运动的系统,更具体地,涉及一种基于三轴加速度传感器实时分类和测量步行/跑步运动的系统: 基于加速度传感器(一轴)分析加速度传感器信号,用于组合运动(跑步,踏脚,陆地)步行/跑步,以便测量日常生活中有氧运动的准确动量; 简化组合运动到跑步跳跃和踏脚,并执行加速度传感器信号的平滑化,以便轻松检测简化步行/跑步的信号; 从平滑结果中确定数量测量的标准以及步行/跑步的运动分类标准; 并对步行/跑步运动进行分类,并通过比较和分析基于定义标准的步行/跑步和实时运动信息的用户测试信息,根据数量进行卡路里消耗量之间的连接 的步行/跑步运动后,可以计算更准确的动量。
    • 5. 发明授权
    • 컬-덤벨 운동 보조방법
    • - 卷曲 - 哑铃练习二次方法
    • KR101632175B1
    • 2016-06-23
    • KR1020130151820
    • 2013-12-06
    • 가천대학교 산학협력단
    • 조진수김이슬
    • A63B21/072A63B24/00
    • 본발명은컬-덤벨운동보조방법에관한것으로, 더욱상세하게는 EMG 신호기반의컬-덤벨운동중 근수축/이완전환시점검출알고리즘및 이를통해무산소운동보조에대한가능성및 방향을제시하며, 사용자는일상에서도전문가수준의무산소운동가이드를받아컬-덤벨운동을보조할수 있도록한 컬-덤벨운동보조방법에관한것으로, 컬-덤벨의올바른자세및 동작을안내하며개인의특성에적응적으로근 수축/이완시점을검출하기위한 EMG 신호인자(parameter)들을설정하는테스트를수행하는튜토리얼및 테스트단계;상기튜토리얼및 테스트단계에서의튜토리얼및 테스트기능을통해사용자의특성에맞추어설정된인자들을이용하여운동수행시, 근수축및 이완시점을검출하고, 이를통해사용자의운동량을실시간으로안내하는운동시작단계;EMG 신호역치값설정단계; 를포함하되, 튜토리얼및 테스트단계는 EMG 신호측정전극부착및 준비를하는튜토리얼제1 단계;덤벨을들고준비자세로서기제2 단계;그자세에서 3초간대기하는제3 단계;이완대기중평균/최대 iEMG를계산하고저장하는제4 단계;그대로덤벨을들어올리기제5 단계;그자세에서 3초간대기하는제6 단계;수축대기중평균/최대 iEMG를계산하고저장하는제7 단계;자세를가이드하면서수축자세를수행하는제8 단계;자세를가이드하면서이완자세를수행하는제9 단계;실제의컬-덤벨동작을 2회연속수행하는제10 단계;데이터를저장하는제11 단계; 를포함하는것을특징으로한다.
    • 6. 发明公开
    • 컬-덤벨 운동 보조방법
    • CURL - DUMBBELL练习二次方法
    • KR1020150066658A
    • 2015-06-17
    • KR1020130151820
    • 2013-12-06
    • 가천대학교 산학협력단
    • 조진수김이슬
    • A63B21/072A63B24/00
    • A63B21/072A63B24/00
    • 본발명은컬-덤벨운동보조방법에관한것으로, 더욱상세하게는 EMG 신호기반의컬-덤벨운동중 근수축/이완전환시점검출알고리즘및 이를통해무산소운동보조에대한가능성및 방향을제시하며, 사용자는일상에서도전문가수준의무산소운동가이드를받아컬-덤벨운동을보조할수 있도록한 컬-덤벨운동보조방법에관한것으로, 컬-덤벨의올바른자세및 동작을안내하며개인의특성에적응적으로근 수축/이완시점을검출하기위한인자(parameter)들을설정하는테스트를수행하는튜토리얼및 테스트단계; 상기튜토리얼및 테스트단계에서의튜토리얼및 테스트기능을통해사용자의특성에적합하게설정된인자들을이용하여운동수행시, 근수축및 이완시점을검출하고, 이를통해사용자의운동량을실시간으로안내하는운동시작단계; 설정단계;를포함하는것을특징으로한다.
    • 本发明涉及一种卷曲哑铃运动辅助方法,更具体地,涉及一种可以提供基于肌电图(EMG)的卷曲 - 哑铃锻炼期间肌肉收缩/松弛转换时间的检测算法的卷曲哑铃运动辅助方法, 信号,辅助无氧运动的可能性和方向,并且使得用户即使在日常生活中也可以接收专业水平的无氧运动指导来辅助无氧运动。 本发明包括: 指导卷曲哑铃的正确姿势和运动的指导和测试步骤,并进行设置参数的测试,以适应个人特征来检测肌肉收缩/放松时间; 运动开始步骤,通过教程和测试步骤中的教程和测试功能,使用自适应用户特征设置的参数来检测运动中的肌肉收缩和松弛时间,并相应地实时指导运动量; 和设置步骤。
    • 7. 发明公开
    • 시각장애인을 위한 햅틱 디스플레이 기반 시각정보 표시시스템 및 방법
    • 用于根据盲人显示器显示视觉信息的系统和方法
    • KR1020140049525A
    • 2014-04-25
    • KR1020140007966
    • 2014-01-22
    • 가천대학교 산학협력단
    • 조진수김혜영정정일김흥기김이슬
    • G09B21/00G09B5/02
    • G09B21/004G09B5/02G09B21/005
    • The present invention relates to a system and a method, both for displaying visual information based on a haptic display for a visually impaired person so that learning material including visual data along with texts is converted to tactile information to be provided. Both the system and the method of the present invention comprise the steps of: extracting an image part and a text part from general learning material, wherein the image part and text part for each piece of information mixed in the general learning material are extracted; making image information tactile by degree of complexity, wherein the extracted image part is analyzed so as to separate it into a low complex image and a high complex image to treat each image by degree of complexity, and converts each image into tactile information; and recognizing texts and converting them into Braille, wherein text information in the text part made tactile and text information in the image part made tactile are respectively recognized to be converted into Braille information. Therefore, people who are visually impaired can utilize various types of special learning material, and many resources that are required to make things tactile can be reduced. [Reference numerals] (10) Learning material input unit; (110) Image/text part extracting unit; (120) Unit for making images tactile by degree of complexity; (130) Unit for recognizing texts and converting them into Braille; (20) Tactile information display unit
    • 本发明涉及一种系统和方法,用于基于视觉障碍者的触觉显示来显示视觉信息,使得包括视觉数据以及文本的学习材料被转换为要提供的触觉信息。 本发明的系统和方法包括以下步骤:从一般学习材料中提取图像部分和文本部分,其中提取混合在一般学习材料中的每个信息的图像部分和文本部分; 使图像信息以复杂程度触觉,其中分析提取的图像部分以将其分离成低复杂图像和高复杂图像,以便通过复杂程度来处理每个图像,并将每个图像转换为触觉信息; 并识别文本并将其转换为盲文,其中将文本部分中的文本信息制成触觉的图像部分中的触觉和文本信息分别被识别为被转换为盲文信息。 因此,视觉障碍者可以利用各种特殊学习材料,可以减少使触觉感觉所需的许多资源。 (附图标记)(10)学习材料输入单元; (110)图像/文本部分提取单元; (120)通过复杂程度使图像触觉的单位; (130)识别文本并将其转换为盲文单位; (20)触觉信息显示单元
    • 8. 发明公开
    • 생체신호 측정기와 스마트 디바이스를 사용한 심전도 데이터 기반의 원격진료 시스템 및 방법
    • 使用生物信号仪和智能装置的远程系统和基于方法的ECG数据
    • KR1020140037325A
    • 2014-03-27
    • KR1020120102550
    • 2012-09-17
    • 가천대학교 산학협력단
    • 조진수김흥기김이슬
    • G06Q50/22A61B5/00G06F19/00
    • G06Q50/22A61B5/0006
    • The present invention relates to a remote medical treatment system based on electrocardiogram data using a bio-signal measuring device and a smart device, comprising a portable bio-signal measuring device for measuring an electrocardiogram (ECG) signal of a patient; a smart device including an application for a patient for receiving the measured ECG signal of the patient from the portable bio-signal measuring device to be outputted in a screen at the same time being stored in a server to be transmitted to PC software of a doctor and inquiring and outputting a medical treatment chart that is written by the doctor to be stored in the server; a remote medical treatment server for storing the ECG of the patient received from the application of the smart device and storing the medical treatment chart for each patient written by the doctor; and PC software for a doctor for performing a remote medical treatment based on the ECG data of the patient transmitted from the server, writing the medical treatment chart to be uploaded in the remote medical treatment server and inquiring the medical treatment chart for each patient. The present invention is characterized by attaching the patch type bio-signal measuring device to a body of the patient; accessing to the remote medical treatment server through the remote medical treatment application for the patient of the smart device to request a doctor for the remote medical treatment; transmitting, in real time, the ECG data of the patient from the remote medical treatment server to the PC software of the doctor for the rendering when the PC software of the doctor accepts the request of the patient to start the remote medical treatment; writing the medical treatment chart by the doctor based on the rendering ECG data of the patient; and uploading the medical treatment chart written after completing the medical treatment in the remote medical treatment server to be used in the remote medical treatment. [Reference numerals] (100) Bio-signal measuring device; (110) Smart phone; (120) Remote medical treatment server; (AA,DD) Electrocardiogram data; (BB,CC) Medical treatment chart; (EE) Patient; (FF) Electrocardiogram; (GG) Doctor; (HH) PC software of the doctor
    • 本发明涉及一种基于使用生物信号测量装置和智能装置的心电图数据的远程医疗系统,其包括用于测量患者的心电图(ECG)信号的便携式生物信号测量装置; 一种智能设备,包括用于患者的应用,用于从便携式生物信号测量装置接收患者的测量ECG信号,以便同时在屏幕中输出,存储在服务器中以传送给医生的PC软件 并询问并输出由医生写入要存储在服务器中的医疗图表; 用于存储从智能设备的应用程序接收到的患者的ECG的远程医疗服务器,并且存储由医生写的每个患者的医疗图表; 以及用于根据从服务器发送的患者的ECG数据执行远程医疗的PC软件,将要上传的医疗图表写入远程医疗服务器并询问每个患者的治疗图表。 本发明的特征在于将贴片式生物信号测量装置附接到患者的身体; 通过用于智能设备的患者的远程治疗应用来访问远程医疗服务器,以请求医生进行远程医疗; 当医生的PC软件接受患者开始远程医疗的请求时,实时将远程医疗服务器的患者的ECG数据传送到医生的PC软件,用于呈现; 根据病人的心电图数据,由医生撰写医疗图表; 并在远程医疗服务器中完成医疗处理后写入的医疗图表用于远程医疗。 (附图标记)(100)生物信号测量装置; (110)智能手机; (120)远程医疗服务器; (AA,DD)心电图数据; (BB,CC)医疗图表; (EE)病人; (FF)心电图; (GG)医生; (HH)医生的PC软件
    • 10. 发明公开
    • 개인건강기록을 위한 실시간 심전도 모니터링 시스템 및 방법
    • 实时ECG监测系统和个人健康记录方法
    • KR1020140037326A
    • 2014-03-27
    • KR1020120102551
    • 2012-09-17
    • 가천대학교 산학협력단
    • 조진수김흥기김이슬
    • G06Q50/22G06Q50/24
    • G16H10/60G06F19/00G06F19/3418G16H40/63
    • The present invention relates to a system and a method for real time monitoring an electrocardiogram (ECG) for a personal health record (PHR). The system for real time monitoring an ECG for a PHR comprises an electrocardiogram measuring device for measuring an electrocardiogram of a person; a mobile terminal having an application for receiving the measured ECG data through the ECG measuring device and a wire/wireless communication to be outputted by a visualized module, providing information of an ECG graph, a heart rate and a stress index and a measuring history, selecting whether to store a measuring result to be stored in the system; an ECG monitoring system for storing PHR information and ECG information to be managed; and a web client for accessing to the ECG monitoring system via internet to provide a PHR management web page and an ECG monitoring web page, thereby transmitting, to a smartphone, the ECG data of the patient measured by the ECG measuring device, storing, in real time, the ECG data of the patient received from the application of the smartphone in the ECG monitoring system, utilizing a bio-signal for ECG, a pulse and stress to manage personal health using the web page, monitoring, in real time, the PHR and an ECG status of the patient and constantly managing the PHR. [Reference numerals] (100) Electrocardiogram measuring device; (110) Smart phone; (130) Web page; (140) System for monitoring an electrocardiogram for a personal health record (Web server); (AA,BB) Personal health record ECG Data; (CC) Bluetooth
    • 本发明涉及用于实时监测个人健康记录(PHR)的心电图(ECG)的系统和方法。 用于实时监测PHR的ECG的系统包括用于测量人的心电图的心电图测量装置; 具有用于通过ECG测量装置接收测量的ECG数据的应用的移动终端和由可视化模块输出的有线/无线通信,提供ECG图的信息,心率和应力指数以及测量历史, 选择是否存储要存储在系统中的测量结果; 用于存储要管理的PHR信息和ECG信息的ECG监测系统; 以及网络客户端,用于通过互联网访问ECG监视系统,以提供PHR管理网页和ECG监控网页,从而将由ECG测量设备测量的患者的ECG数据传输到智能手机,将其存储在 在ECG监测系统中从智能手机的应用中接收到的患者的ECG数据,利用ECG的生物信号,使用网页来管理个人健康的脉搏和压力,实时监测, PHR和患者的ECG状态,并持续管理PHR。 (附图标记)(100)心电图测量装置; (110)智能手机; (130)网页; (140)用于监测个人健康记录(Web服务器)的心电图的系统; (AA,BB)个人健康记录ECG数据; (CC)蓝牙